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土霉素对过氧化氢酶的潜在酶毒性。

Potential enzyme toxicity of oxytetracycline to catalase.

机构信息

School of Environmental Science and Engineering, Shandong University, China-America CRC for Environment & Health, Shandong Province, 27# Shanda South Road,Jinan 250100, PR China.

出版信息

Sci Total Environ. 2010 Oct 15;408(22):5399-404. doi: 10.1016/j.scitotenv.2010.08.005. Epub 2010 Aug 30.

Abstract

Oxytetracycline (OTC) is a kind of widely used veterinary drugs. The residue of OTC in the environment is potentially harmful. In the present work, the non-covalent toxic interaction of OTC with catalase was investigated by the fluorescence spectroscopy, UV-vis absorption and circular dichroism (CD) spectroscopy at physiological pH 7.4. OTC can interact with catalase to form a complex mainly by van der Waals' interactions and hydrogen bonds with one binding site. The association constants K were determined to be K(293K)=7.09×10(4)Lmol(-1) and K(311K)=3.31×10(4)Lmol(-1). The thermodynamic parameters (ΔH°, ΔG° and ΔS°) of the interaction were calculated. Based on the Förster theory of non-radiative energy transfer, the distance between bound OTC and the tryptophan residues of catalase was determined to be 6.48nm. The binding of OTC can result in change of the micro-environment of the tryptophan residues and the secondary structure of catalase. The activity of catalase was also inhibited for the bound OTC. This work establishes a new strategy to probe the enzyme toxicity of veterinary drug residues and is helpful for clarifying the molecular toxic mechanism of OTC in vivo. The established strategy can be used to investigate the potential enzyme toxicity of other small organic pollutants and drugs.

摘要

土霉素(OTC)是一种广泛使用的兽药。环境中 OTC 的残留可能具有危害性。在本工作中,在生理 pH 值 7.4 下,通过荧光光谱、紫外-可见吸收光谱和圆二色性(CD)光谱研究了 OTC 与过氧化氢酶的非共价毒性相互作用。OTC 可以通过范德华力和氢键与一个结合位点与过氧化氢酶相互作用形成复合物。确定了结合常数 K 为 K(293K)=7.09×10(4)Lmol(-1)和 K(311K)=3.31×10(4)Lmol(-1)。计算了相互作用的热力学参数(ΔH°、ΔG°和ΔS°)。基于福斯特非辐射能量转移理论,确定结合的 OTC 与过氧化氢酶色氨酸残基之间的距离为 6.48nm。OTC 的结合会导致色氨酸残基的微环境和过氧化氢酶的二级结构发生变化。结合的 OTC 还会抑制过氧化氢酶的活性。这项工作建立了一种新的策略来探测兽药残留的酶毒性,有助于阐明 OTC 在体内的分子毒性机制。该建立的策略可用于研究其他小分子有机污染物和药物的潜在酶毒性。

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